Pearson eText Human Anatomy & Physiology -- Instant Access (Pearson+)
Pearson eText Human Anatomy & Physiology -- Instant Access (Pearson+)
2nd Edition
ISBN: 9780136873822
Author: Erin Amerman
Publisher: PEARSON+
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Chapter 16, Problem 1CYR

Mark the following statements as true or false. If a statement is false, correct it to make a true statement.

a. The cells of the nervous system communicate via action potentials, whereas the cells of the endocrine system communicate via hormones.

b. Autocrine signals affect the same cells that secrete them.

c. The pancreas, thyroid gland, and parathyroid glands secrete neurohormones.

d. Steroid hormones are hydrophilic molecules that bind to plasma membrane proteins as part of a second-messenger system.

e. The secretion of most hormones is regulated by a negative feedback system.

Expert Solution & Answer
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Summary Introduction

To review:

Whether the following statements are true or false:

a. The cells of the nervous system communicate via an action potential, whereas the cells of the endocrine system communicate via hormones.

b. Autocrine signals affect the same cells that secrete them.

c. The pancreas, the thyroid gland, and the parathyroid gland secrete neurohormones.

d. Steroid hormones are hydrophilic molecules that bind to the plasma membrane proteins as a part of the second-messenger system.

e. The secretion of most hormones isregulated by a negative feedback mechanism.

Introduction:

The endocrine system secretes chemical messengers called hormones. These hormones travel to their target cells via the bloodstream and attach to their specific receptors. The hormones then make changes to the cell’s function.

Explanation of Solution

a. The statement, “The cells of the nervous system communicate via an action potential, whereas the cells of the endocrine system communicate via hormones,” is false. The cells of the nervous system and also the endocrine system communicate via chemicals. The information is carried forward in the form of an action potential in the nervous system. However, when the information is to be sent to another cell, the neurons secrete neurotransmitters to affect the cell. Hormones are also known as chemical messengers due to their ability to communicate with other cells and bring about the expected changes.

The correct statement is “The cells of the nervous system as well as the endocrine system communicate via chemicals.”

b. The statement, “Autocrine signals affect the same cells that secrete them,” is correct. There are three ways by which the endocrine gland can communicate with the target tissues and cells. It can secrete chemicals in the blood that reach the target cells or it can secrete chemicals in the extracellular fluid (or ECF). In the case of paracrine glands, the chemicals are secreted in the ECF that target the local cells. In the case of autocrine glands, the chemicals are secreted in the ECF, but they act on the same cells that secreted them.

c. The statement, “The pancreas, the thyroid gland, and the parathyroid gland secrete neurohormones,” is false. There are a group of organs, known as the secondary endocrine organs, which are not a part of the endocrine system. Neuroendocrine organs are secondary endocrine organs that secrete neurohormones.

The hypothalamus, the pineal glans and the adrenal medulla are such organs as they are made up of nerve cells, but they secrete hormones; hence, they are called neurohormones. The correct statement is “The pancreas, the thyroid gland, and the parathyroid gland do not secrete neurohormones.”

d. The statement, “Steroid hormones are hydrophilic molecules that bind to the plasma membrane proteins as a part of the second-messenger system,” is false. Steroid hormones are cholesterol-derived, and hence, are hydrophobic in nature. Due to their lipid-based nature, they can cross the plasma membrane and bind to the receptors, even if they present in the cytosol or the nucleus. Aminoacid–based hormones are protein-derived and hydrophilic in nature. They cannot cross the lipid-based plasma membrane. So, their receptors are always situated on the plasma membrane. The correct statement is “Aminoacid hormones are hydrophilic molecules that bind to the plasma membrane proteins as a part of the second-messenger system.”

e. The statement “The secretion of most hormones is regulated by a negative feedback mechanism” is correct. When the receptors in the body detect a change, they send this information to the control center, which is an endocrine gland. This gland responds by secreting hormones to control the situation. The hormone reaches the target cell and shows the desired outcome. When the desired outcome is reached, the feedback sent to the control center decreases the hormone secretion.

Conclusion

Thus, it can be concluded that statements (b) and (e) are true as per the reasons provided, and statements (a), (c), and (d) are false.

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Chapter 16 Solutions

Pearson eText Human Anatomy & Physiology -- Instant Access (Pearson+)

Ch. 16.2 - 3. What are the target tissues and effects of...Ch. 16.2 - What are the target tissues and effects of...Ch. 16.2 - Which gland produces ADH and oxytocin, and from...Ch. 16.2 - How does the hypothalamus control the secretion of...Ch. 16.2 - 7. What are the tropic hormones of the anterior...Ch. 16.2 - Describe the target tissues and effects of growth...Ch. 16.3 - 1. What are thyroid follicles and how are they...Ch. 16.3 - Prob. 2QCCh. 16.3 - What are the main functions of thyroid hormones?Ch. 16.3 - 4. How are thyroid hormones produced? How is this...Ch. 16.3 - 5. What homeostatic imbalances may accompany...Ch. 16.3 - What are the target tissues and effects of...Ch. 16.3 - Prob. 7QCCh. 16.4 - 1. What are the three zones of the adrenal...Ch. 16.4 - 2. What are the target tissues and effects of...Ch. 16.4 - 3. What are the target tissues and effects of...Ch. 16.4 - What two hormones are produced by the adrenal...Ch. 16.4 - What is the relationship between the adrenal...Ch. 16.5 - What are the main target tissues of glucagon? What...Ch. 16.5 - What are the main target tissues of insulin?Ch. 16.5 - What are the signs and symptoms of the two types...Ch. 16.5 - 4. How do glucagon and insulin work together to...Ch. 16.6 - Prob. 1QCCh. 16.6 - Prob. 2QCCh. 16.6 - Prob. 3QCCh. 16.6 - Prob. 4QCCh. 16.7 - Which hormones primarily control fluid...Ch. 16.7 - 2. What is the role of each of these hormones...Ch. 16.7 - Prob. 3QCCh. 16.7 - Prob. 4QCCh. 16.7 - Prob. 5QCCh. 16.7 - 6. What is the role of each hormone in the stress...Ch. 16 - Mark the following statements as true or false. If...Ch. 16 - Which of the following is not a potential effect...Ch. 16 - 3. Which of the following hormones is/are produced...Ch. 16 - How does ADH affect the amount of water in the...Ch. 16 - Prob. 5CYRCh. 16 - 6. List the target tissues and effects of the...Ch. 16 - 7. The thyroid gland consists of: a. follicle...Ch. 16 - 8. Which of the following is not an effect of...Ch. 16 - 9. Mark the following statements as true or false....Ch. 16 - 10 Fill in the blanks: A rise in free and would...Ch. 16 - 11. Which of the following statements correctly...Ch. 16 - 12. Fill in the blanks: The outer part of the...Ch. 16 - Which of the following is not an effect of...Ch. 16 - 14. Cortisol is: a. a potent inhibitor of the...Ch. 16 - 15. Describe the components of the...Ch. 16 - Which of the following hormones is not an integral...Ch. 16 - 17. Which of the following statements about the...Ch. 16 - Explain how insulin and glucagon are antagonists.Ch. 16 - Prob. 19CYRCh. 16 - Match the following hormones with their correct...Ch. 16 - Mark the following statements as true or false. If...Ch. 16 - Predict the effects of a pancreatic tumor that...Ch. 16 - Prob. 2CYUCh. 16 - 3. A patient has a brain tumor that necessitates...Ch. 16 - 1. Ms. Reczkiewicz has her thyroid gland removed...Ch. 16 - A new diet guru claims hypersecretion of cortisol...Ch. 16 - Lets say that the dietary supplement in question 2...Ch. 16 - 4. Mr. Montez is a patient with type I diabetes...Ch. 16 - Prob. 5AYKBCh. 16 - You have read that aldosterone causes sodium ion...
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